Surface treatment method for improving low-speed impact resistant performance of resin-based composite material
A composite material and surface treatment technology, which is applied in the field of impact resistance of composite materials, to achieve the effects of impact reduction, less time-consuming, and elimination of micro-damage
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Embodiment 1
[0020] A surface treatment method for improving the low-velocity impact resistance of resin-based composite materials, the steps are as follows:
[0021] Step 1: First remove the burrs and oxides on the outer surface of the iron-based amorphous alloy sheet whose thickness is twice the thickness of the single layer of the resin-based composite material to be treated by hand grinding, and polish the outer surface to make it smooth ;
[0022] Step 2: Next, the iron-based amorphous alloy sheet with a flat outer surface is processed by cutting into an iron-based amorphous alloy sheet that can be adapted to cover the outer surface of the resin-based composite material to be treated;
[0023] Step 3: Gluing each iron-based amorphous alloy sheet to the corresponding outer surface of the resin-based composite material with an ethyl acrylate adhesive;
[0024] Step 4: Finally, the resin-based composite material glued with iron-based amorphous alloy sheets is cleaned by chemical wet cle...
Embodiment 2
[0027] A surface treatment method for improving the low-velocity impact resistance of resin-based composite materials, the steps are as follows:
[0028] Step 1: First remove the burrs and oxides on the outer surface of the iron-based amorphous alloy sheet whose thickness is 4 times the thickness of the single layer of the resin-based composite material to be treated by mechanical grinding, and polish the outer surface smooth;
[0029] Step 2: Next, the iron-based amorphous alloy sheet with a flat outer surface is processed by cutting into an iron-based amorphous alloy sheet that can be adapted to cover the outer surface of the resin-based composite material to be treated;
[0030] Step 3: Gluing each iron-based amorphous alloy sheet to the corresponding outer surface of the resin-based composite material with an epoxy resin structural adhesive;
[0031] Step 4: Finally, the resin-based composite material glued with the iron-based amorphous alloy sheet is cleaned by chemical ...
Embodiment 3
[0034] A surface treatment method for improving the low-velocity impact resistance of resin-based composite materials, the steps are as follows:
[0035] Step 1: First remove the burrs and oxides on the outer surface of the iron-based amorphous alloy sheet whose thickness is 6 times the thickness of the single layer of the resin-based composite material to be processed, and polish the outer surface to make it smooth ;
[0036] Step 2: Next, the iron-based amorphous alloy sheet with a flat outer surface is processed by chemical milling into an iron-based amorphous alloy sheet that can be adapted to cover the outer surface of the resin-based composite material to be processed;
[0037] Step 3: Gluing each iron-based amorphous alloy sheet to the corresponding outer surface of the resin-based composite material with an ethyl acrylate adhesive;
[0038] Step 4: Finally, the resin-based composite material glued with iron-based amorphous alloy sheets is cleaned by chemical wet clean...
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